In this work we reported, for the first time, the preparation by radio frequency sputtering and the electrochemical characterization of Li/M/Si/O thin films (M ¼ Fe, Mn), as positive electrodes for lithium microbatteries. The deposited films were amorphous both in case of pure iron and mixed iron/manganese compositions. The electrochemical performances, in terms of capacity values and coulombic efficiency, were comparable to those currently reported for the corresponding crystalline bulk materials. In particular, capacities of the order of 50 mAh g1 were obtained at 2.5 C with coulombic efficiency near 90% by using a standard liquid electrolyte. Our preliminary electrochemical results, together with the easiness of preparation, suggested th...
Lithium ion battery is the dominant secondary storage technology for portable electronics, electric ...
International audiencethe increasing demands from micro-power applications call for the development ...
Since fifteen years, considerable effort has been invested in developing thin film solid state micro...
In this work we reported, for the first time, the preparation by radio frequency sputtering and the ...
The miniaturisation of electronic components involves a strong demand in power microsources. Lithium...
International audienceWith the aim of developing 3V all-solid-state lithium microbatteries, Fe$_2$(M...
The next generation of lithium ion batteries (LIBs) with increased energy density for large-scale ap...
The next generation of lithium ion batteries (LIBs) with increased energy density for large-scale ap...
Molybdenum oxide thin films are interesting materials for solid state electrochemical devices such a...
La miniaturisation des composants électroniques implique une forte demande en microsources d'énergie...
This work demonstrates the synthesis and characterization of several material systems that meet the ...
International audienceWe report the electrochemical performance of amorphous LiCuPO 4 thin films obt...
Research over the last decade at Oak Ridge National Laboratory has led to the development of solid-s...
Solid-state batteries is one of the main contenders for domination of the future battery marked. Thi...
Amorphous hydrogenated silicon (a-Si:H) is known to be a perspective material for negative electrode...
Lithium ion battery is the dominant secondary storage technology for portable electronics, electric ...
International audiencethe increasing demands from micro-power applications call for the development ...
Since fifteen years, considerable effort has been invested in developing thin film solid state micro...
In this work we reported, for the first time, the preparation by radio frequency sputtering and the ...
The miniaturisation of electronic components involves a strong demand in power microsources. Lithium...
International audienceWith the aim of developing 3V all-solid-state lithium microbatteries, Fe$_2$(M...
The next generation of lithium ion batteries (LIBs) with increased energy density for large-scale ap...
The next generation of lithium ion batteries (LIBs) with increased energy density for large-scale ap...
Molybdenum oxide thin films are interesting materials for solid state electrochemical devices such a...
La miniaturisation des composants électroniques implique une forte demande en microsources d'énergie...
This work demonstrates the synthesis and characterization of several material systems that meet the ...
International audienceWe report the electrochemical performance of amorphous LiCuPO 4 thin films obt...
Research over the last decade at Oak Ridge National Laboratory has led to the development of solid-s...
Solid-state batteries is one of the main contenders for domination of the future battery marked. Thi...
Amorphous hydrogenated silicon (a-Si:H) is known to be a perspective material for negative electrode...
Lithium ion battery is the dominant secondary storage technology for portable electronics, electric ...
International audiencethe increasing demands from micro-power applications call for the development ...
Since fifteen years, considerable effort has been invested in developing thin film solid state micro...